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Optimal determination of respiratory airflow patterns using a nonlinear multi-compartment model for a lung-rib-cage system

机译:使用非线性多室模型对肋骨-笼式系统进行呼吸气流模式的最佳确定

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In this paper, we develop optimal respiratory airflow patterns using a nonlinear multi-compartment model for a lung-rib-cage system. Specifically, we use classical calculus of variations minimization techniques to derive an optimal airflow pattern for inspiratory and expiratory breathing cycles. The physiological interpretation of the optimality criteria used involve the minimization of work of breathing and lung volume acceleration for the inspiratory phase, and the minimization of the elastic potential energy and rapid airflow rate changes for the expiratory phase. Finally, we numerically integrate the resulting nonlinear two-point boundary value problems to determine the optimal airflow patterns over the inspiratory and expiratory breathing cycles.
机译:在本文中,我们使用用于肺肋笼系统的非线性多隔室模型开发最佳呼吸气流模式。具体地,我们使用最小化技术的经典演奏最小化技术来获得吸入和呼气呼吸循环的最佳气流模式。所使用的最优性标准的生理解释涉及最小化吸气相的呼吸和肺量加速度的工作,并且对呼气阶段的弹性势能和快速气流率的最小化变化。最后,我们在数值上整合了所产生的非线性两点边值问题,以确定吸气和呼气呼吸循环上的最佳气流模式。

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